Factors which account for the almost universal choice of water as a medium for textile dyeing processes are outlined. Many of the dominant trends in the development of improved equipment and processes during the last decade have been associated with the control and treatment of this essential resource. Typical examples include the strong links between water conservation and most of the effective ways of saving energy, improvements in effluent treatment plants to minimise the impact of water‐borne contaminants on the environment, exploitation of the possibilities for reuse of process water or treated effluent in further processing, as well as the direct objective of holding in check the rising contribution of water supply and effluent treatment to limit overall costs. This broad expanse of water, pure and impure, is surveyed from the viewpoint of the textile dye user, since, by virtue of the physical and chemical properties of textile dyes, he is also invariably a continual user of water.
Abstract:Recently, torrential rain and drought have occurred in close temporal proximity and for similar durations due to changes in the spatiotemporal patterns of rainfall owing to climate change. In particular, when a drought occurs, it tends to be prolonged, making it necessary to improve the operation of multi-purpose dams that not only control flooding but also serve as water supplies. In this study, standard water volume lines and action plans by response stage were improved so that water could be stored in advance of a drought instead of reservoir operation criteria set based on data from the past. The minimum water demand by use (domestic water, industrial water, and agricultural water) was also calculated. The improved reservoir operation criteria were applied to multi-purpose dams in the Nakdong River Basin, and their effects were analyzed by calculating additionally secured water volumes. In the future, in case of lowered water volumes in multipurpose dams owing to a drought, the application of these improved reservoir operation criteria is expected to contribute to water supply stability by delaying entry into the drought stage, and minimizing the damages caused by limited water supplies.
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